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Terahertz germanium laser system

Laser system consisting of a Ge:Be laser and a Ge:Al photodetector: Applications of the terahertz germanium laser system in protein research
  • 02/2010: Press release Why fish don’t freeze in the Arctic Ocean - RUB chemists unmask natural antifreeze - Anti-freeze protein affects the movement of surrounding water molecules
  • 02/2008: Press release Protein Folding Modifies the Water in the Environment - New Knowledge Gained From Terahertz Spectroscopy - RUB Chemists Observes "THz Dance"
  • 12/2007: Press release The terahertz dance of water with proteins - Disco becomes a minuet - Protein influence has a previously unsuspected long reach
Developments
  • 2005: Various spectroscopic sample set-ups: transmission, ATR, cavity enhanced ATR, two-beam.
  • 2005: Operated with user interface by students from chemistry and biochemistry with low-tech background.
  • 2005: Fully automated LabView controlled germanium laser spectrometer for aquaeous samples.
  • 2003: First far-infrared and THz multilayer mirrors for broadband and Q-factor resonators.
  • 2001: Simple plug and switch operation. Laser is operational within 30 min after starting the cooler.
  • 2001: High duty cycles of large volume (0.3 cm3) high power (Watt) output lasers in closed-cycle cooler up to 2%.
  • 2000: Mode-locked copper-doped germanium THz lasers.
  • 2000: Very high duty cycles up to 5%, low 4 Watt input power and high 45 kHz repetition rates.
  • 2000: Enhanced continuous spontaneous emission indicating continuous wave laser emission for small 0.5 mm3 crystals.
  • 1999: Planar lasers: simplifies drastically the fabrication of resonators.
  • 1997: With room temperature detection no cryogenic liquid needed.
  • 1997: First THz semiconductor laser operation in mobile, small foot-print closed-cycle cooler.
  • 1997: Demonstrated wide tuning range from 1 to 4 THz with a single device (unique 160% bandwidth at 2.5 THz).
  • 1996: Simple fabrication of Ge THz lasers by diffusing copper into commercially available pure Ge.
  • 1996: Deep acceptor doped germanium THz lasers with high duty cycles.
  • 1994: Single mode emission of germanium THz laser.
  • 1994: Heterodyne detection of laser modes: frequency temperature tuning.
  • 1993: Mesh output coupler used as resonator part with germanium THz laser.
  • 1992: Ge lasers with narrow linewidth of less than 1 MHz in the 2.5 THz range measured with room temperature Schottky diodes.

Publications using the terahertz germanium laser system: